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作 者:刘乃玲[1] 管乐宝 卞姗姗 邵东岳 Liu Nailing;Guan Lebao;Bian Shanshan;Shao Dongyue(Shandong Jianzhu University,Jinan;Jinan Municipal Engineering Design&Research Institute(Group)Co.,Ltd.,Jinan;Tong Yuan Design Group,Jinan)
机构地区:[1]山东建筑大学,济南 [2]济南市市政工程设计研究院(集团)有限责任公司,济南 [3]同圆设计集团股份有限公司,济南
出 处:《暖通空调》2024年第4期36-41,86,共7页Heating Ventilating & Air Conditioning
摘 要:对华东地区某酒店制冷机房运行策略进行了优化,利用能耗模拟软件对多种运行方案进行了仿真分析。结果表明:原方案仅对冷水泵采用变频控制,制冷机房能效比为4.62;优化方案1采取传统变频方式,对冷水泵、冷却水泵、冷却塔风机采用变频控制,制冷机房能效比达到5.32,与原方案相比提升了15.1%;优化方案2通过对冷水机组、冷水泵、冷却水泵、冷却塔风机进行优化控制,制冷机房能效比为5.48,与原方案相比能效比提升了18.6%,且每年可减少约79 t碳排放量,节能效果显著。In this paper,the operation strategy of a hotel chiller room in East China is optimized,and a variety of operation schemes are simulated and analysed by using energy consumption simulation software.The results show that the original scheme only uses the frequency conversion control for the chilled water pumps,and the energy efficiency ratio of the chiller room is 4.62.Optimization scheme 1 adopts the traditional frequency conversion method and adopts frequency conversion control for the chilled water pumps,cooling water pumps and cooling tower fans.The energy efficiency ratio of the chiller room reaches 5.32,which is increased by 15.1%compared with the original scheme.Optimization scheme 2 optimizes the control of the chillers,chilled water pumps,cooling water pumps and cooling tower fans,the energy efficiency ratio of the chiller room is 5.48,which is 18.6%higher than that of the original scheme,the annual carbon emissions can be reduced by about 79 t,and the energy saving effect is remarkable.
关 键 词:高效制冷机房 运行策略优化 节能 能耗模拟 能效比 碳排放
分 类 号:TU83[建筑科学—供热、供燃气、通风及空调工程]
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